no.
Increasing the pressure of the system will favor the formation of more N2O4. This is because the reaction 2NO2 ⇌ N2O4 involves a decrease in volume, and Le Chatelier's principle predicts that increasing the pressure will shift the equilibrium towards the side with fewer moles of gas, in this case N2O4.
NO2(g)+SO2(g)-->NO(g)+SO3(g) here NO2 act as a oxidising agent
2Ag + 6HNO3 -> 2NO2 + 2AgNO3 + 3H2O
The reaction NO2 -> N2O4 is an endothermic reaction. This means it absorbs heat from the surroundings to proceed.
The equation represents the decomposition of dinitrogen tetroxide (N2O4) into nitrogen dioxide (NO2) gas. This is a reversible reaction where two molecules of NO2 are formed from one molecule of N2O4.
Yes, the reaction N2O4 -> 2NO2 is a redox reaction because nitrogen changes its oxidation state from +4 to +2, while oxygen changes its oxidation state from -2 to 0. This indicates a transfer of electrons between the reactants.
This is an endothermic equilibrium reaction Thus, increase temperature will push the reaction to the right. So more N2O4 is produced
Increasing the pressure of the system will favor the formation of more N2O4. This is because the reaction 2NO2 ⇌ N2O4 involves a decrease in volume, and Le Chatelier's principle predicts that increasing the pressure will shift the equilibrium towards the side with fewer moles of gas, in this case N2O4.
NO2(g)+SO2(g)-->NO(g)+SO3(g) here NO2 act as a oxidising agent
2Ag + 6HNO3 -> 2NO2 + 2AgNO3 + 3H2O
The reaction NO2 -> N2O4 is an endothermic reaction. This means it absorbs heat from the surroundings to proceed.
The equation represents the decomposition of dinitrogen tetroxide (N2O4) into nitrogen dioxide (NO2) gas. This is a reversible reaction where two molecules of NO2 are formed from one molecule of N2O4.
The chemical formula for that reaction is 2n2o5 -->2 no2+3o2. It describes the process of two distinct compounds coming together to form two new ones.
A browning banana is a redox reaction.
A redox reaction can be identified by the transfer of electrons between reactants. Look for changes in oxidation states of elements involved in the reaction to determine if it is a redox reaction.
the redox reaction is reserved
This is true -APEX